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葡萄糖氧化酶作为抗生素生长促进剂的替代品,可改善白羽肉鸡的免疫功能、抗氧化状态和盲肠微生物群环境。

Glucose oxidase as an alternative to antibiotic growth promoters improves the immunity function, antioxidative status, and cecal microbiota environment in white-feathered broilers.

作者信息

Zhao Wenyu, Huang Yuan, Cui Na, Wang Ruiguo, Xiao Zhiming, Su Xiaoou

机构信息

Key Laboratory of Agro-Product Quality and Safety of the Ministry of Agriculture, Institute of Quality Standards and Testing Technology for Agro-Products, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Front Microbiol. 2023 Mar 3;14:1100465. doi: 10.3389/fmicb.2023.1100465. eCollection 2023.

Abstract

This study aimed to demonstrate the effects of glucose oxidase (GOD) on broilers as a potential antibiotic substitute. A total of four hundred twenty 1-day-old male Cobb500 broilers were randomly assigned into five dietary treatments, each with six replicates (12 chicks per replicate). The treatments included two control groups (a basal diet and a basal diet with 50 mg/kg aureomycin) and three GOD-additive groups involving three different concentrations of GOD. Analysis after the -test showed that, on day 21, the feed:gain ratio significantly decreased in the 1,200 U/kg GOD-supplied group (GOD1200) compared to the antibiotic group (Ant). The same effect was also observed in GOD1200 during days 22-42 and in the 600 U/kg GOD-supplied group (GOD600) when compared to the control group (Ctr). The serum tests indicated that, on day 21, the TGF-β cytokine was significantly decreased in both GOD600 and GOD1200 when compared with Ctr. A decrease in malondialdehyde and an increase in superoxide dismutase in GOD1200 were observed, which is similar to the effects seen in Ant. On day 42, the D-lactate and glutathione peroxidase activity changed remarkably in GOD1200 and surpassed Ant. Furthermore, GOD upregulated the expression of the jejunal barrier genes (MUC-2 and ZO-1) in two phases relative to Ctr. In the aureomycin-supplied group, the secretory immunoglobulin A significantly decreased in the jejunum at 42 days. Changes in microbial genera were also discovered in the cecum by sequencing 16S rRNA genes at 42 days. The biomarkers for GOD supplementation were identified as , and . Except for , all the abovementioned genera were n-butyrate producers known for imparting their various benefits to broilers. The PICRUSt prediction of microbial communities revealed 11 pathways that were enriched in both the control and GOD-supplied groups. GOD1200 accounted for an increased number of metabolic pathways, demonstrating their potential in aiding nutrient absorption and digestion. In conclusion, a diet containing GOD can be beneficial to broiler health, particularly at a GOD concentration of 1,200 U/kg. The improved feed conversion ratio, immunity, antioxidative capacity, and intestinal condition demonstrated that GOD could be a valuable alternative to antibiotics in broiler breeding.

摘要

本研究旨在证明葡萄糖氧化酶(GOD)作为一种潜在的抗生素替代品对肉鸡的影响。总共420只1日龄雄性科宝500肉鸡被随机分为五种日粮处理组,每组六个重复(每个重复12只雏鸡)。处理组包括两个对照组(基础日粮和添加50mg/kg金霉素的基础日粮)以及三个添加GOD的组,涉及三种不同浓度的GOD。t检验后的分析表明,在第21天,与抗生素组(Ant)相比,供应1200U/kg GOD的组(GOD1200)的料重比显著降低。在第22 - 42天期间,GOD1200也观察到同样的效果,并且与对照组(Ctr)相比,供应600U/kg GOD的组(GOD600)也有相同效果。血清检测表明,在第21天,与Ctr相比,GOD600和GOD1200中的转化生长因子-β细胞因子均显著降低。在GOD1200中观察到丙二醛减少和超氧化物歧化酶增加,这与在Ant中看到的效果相似。在第42天,GOD1200中的D - 乳酸和谷胱甘肽过氧化物酶活性显著变化并超过Ant。此外,相对于Ctr,GOD在两个阶段上调了空肠屏障基因(MUC - 2和ZO - 1)的表达。在供应金霉素的组中,42天时空肠中的分泌型免疫球蛋白A显著降低。在第42天通过对16S rRNA基因进行测序,在盲肠中也发现了微生物属的变化。添加GOD的生物标志物被鉴定为 , ,和 。除了 ,上述所有属都是已知对肉鸡有各种益处的正丁酸盐产生菌。微生物群落的PICRUSt预测揭示了在对照组和添加GOD的组中均富集的11条途径。GOD1200占代谢途径数量增加,表明它们在帮助营养吸收和消化方面的潜力。总之,含有GOD的日粮对肉鸡健康有益,特别是在GOD浓度为1200U/kg时。改善的饲料转化率、免疫力、抗氧化能力和肠道状况表明,GOD在肉鸡养殖中可能是抗生素的有价值替代品。

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